Remote Sensing in Applications of Geoinformation

Remote sensing, especially from satellites, is a source of invaluable data which can be used to generate synoptic information for virtually all parts of the Earth, including the atmosphere, land, and ocean. In the last few decades, such data have evolved as a basis for accurate information about the...

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Other Authors: Michaelides, Silas (Editor)
Format: Book Chapter
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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020 |a books978-3-0365-2326-2 
020 |a 9783036523262 
020 |a 9783036523255 
024 7 |a 10.3390/books978-3-0365-2326-2  |c doi 
041 0 |a English 
042 |a dc 
072 7 |a TBX  |2 bicssc 
100 1 |a Michaelides, Silas  |4 edt 
700 1 |a Michaelides, Silas  |4 oth 
245 1 0 |a Remote Sensing in Applications of Geoinformation 
260 |a Basel  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2022 
300 |a 1 electronic resource (174 p.) 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a Remote sensing, especially from satellites, is a source of invaluable data which can be used to generate synoptic information for virtually all parts of the Earth, including the atmosphere, land, and ocean. In the last few decades, such data have evolved as a basis for accurate information about the Earth, leading to a wealth of geoscientific analysis focusing on diverse applications. Geoinformation systems based on remote sensing are increasingly becoming an integral part of the current information and communication society. The integration of remote sensing and geoinformation essentially involves combining data provided from both, in a consistent and sensible manner. This process has been accelerated by technologically advanced tools and methods for remote sensing data access and integration, paving the way for scientific advances in a broadening range of remote sensing exploitations in applications of geoinformation. This volume hosts original research focusing on the exploitation of remote sensing in applications of geoinformation. The emphasis is on a wide range of applications, such as the mapping of soil nutrients, detection of plastic litter in oceans, urban microclimate, seafloor morphology, urban forest ecosystems, real estate appraisal, inundation mapping, and solar potential analysis. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by/4.0/ 
546 |a English 
650 7 |a History of engineering & technology  |2 bicssc 
653 |a inundation mapping 
653 |a flood mapping 
653 |a automatic thresholding 
653 |a Sentinel-2 
653 |a wetlands 
653 |a marshland 
653 |a Camargue 
653 |a Doñana 
653 |a 3D modelling 
653 |a LiDAR 
653 |a CityGML 
653 |a solar potential 
653 |a general valuation 
653 |a Cyprus 
653 |a artificial intelligence 
653 |a mass appraisals 
653 |a real estate 
653 |a algorithms 
653 |a mathematical models 
653 |a AVM 
653 |a CAMA 
653 |a urban forest 
653 |a landscape metrics 
653 |a aerial images 
653 |a street view images 
653 |a semantic segmentation 
653 |a convolutional neural network (CNN) 
653 |a spatial clustering 
653 |a Eastern Mediterranean Sea 
653 |a multiple filtering 
653 |a skeletonization 
653 |a structural interpretation 
653 |a air temperature 
653 |a surface temperature 
653 |a multiple linear regression 
653 |a Landsat 8 
653 |a urban heat island 
653 |a satellite images 
653 |a plastic litter 
653 |a spectral indices 
653 |a spectroscopy 
653 |a remote sensing 
653 |a UAVs 
653 |a soil nutrients 
653 |a field spectroscopy 
653 |a Landsat (OLI) 
653 |a partial least-squares and regression 
653 |a Wadi El-Garawla 
653 |a n/a 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/4815  |7 0  |z Get Fullteks 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/78724  |7 0  |z DOAB: description of the publication